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New concept of carbon fiber reinforced composite 3D auxetic lattice structures based on stretching-dominated cells

机译:基于拉伸主导细胞的碳纤维增强复合材料3D辅助晶格结构的新概念

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摘要

A new concept of 3D auxetic lattice structures with high stiffness is proposed in this paper. Correspondingly, a feasible method for rapidly fabricating the proposed structures with high-performance continuous carbon fiber reinforced polymer (CFRP) composite is exploited. Theoretical models for predicting the homogenized elastic properties of the representative structure along all principal axes, including the Young's moduli, Poisson's ratios and shear moduli, are developed. Based on the models, directional dependence of structural homogenized elastic properties is investigated in detail. The compressive elastic behaviors of the 3D auxetic lattice structures fabricated with high-performance continuous carbon fiber reinforced polymer (CFRP) composite are further investigated in a combination of numerical analysis and experiments. Our results suggest that the new concept of 3D auxetic lattice structures are very suitable for uniaxial loading and can be great candidates where excellent load bearing capacity and obvious negative Poisson's ratio effects are simultaneously desired. Coupled with the proposed efficient fabrication process, our efforts may help to promote the 3D auxetic lattice structures to be widely used in a variety of applications.
机译:本文提出了具有高刚度的3D辅助晶格结构的新概念。相应地,利用了利用高性能连续碳纤维增强聚合物(CFRP)复合材料快速制造所提出的结构的可行方法。开发了用于预测所有主轴的代表性结构的均质弹性特性的理论模型,包括杨氏模数,泊松比和剪切模量。基于模型,详细研究了结构均化弹性特性的定向依赖性。通过数值分析和实验的组合进一步研究了用高性能连续碳纤维增强聚合物(CFRP)复合材料制造的3D辅助晶格结构的压缩弹性行为。我们的研究结果表明,3D辅助晶格结构的新概念非常适合单轴装载,可以是同时希望优异的承载能力和明显的负泊松比率效果的伟大候选者。再加上所提出的高效制造工艺,我们的努力可能有助于促进3D辅助晶格结构,以广泛用于各种应用中。

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